Regenerative Medicine Program, Sprott Centre for Stem Cell Research, Ottawa Hospital Research Institute, The Ottawa Hospital, Ottawa, ON, K1H 8L6, Canada.
Institute of Biochemistry and Department of Chemistry, Carleton University, 1125 Colonel By Drive, Ottawa, ON, K1S 5B6, Canada.
Mol Cell Biochem. 2018 May;442(1-2):47-58. doi: 10.1007/s11010-017-3192-9. Epub 2017 Sep 16.
Ground squirrel torpor during winter hibernation is characterized by numerous physiological and biochemical changes, including alterations to fuel metabolism. During torpor, many tissues switch from carbohydrate to lipid catabolism, often by regulating key enzymes within glycolytic and lipolytic pathways. This study investigates the potential regulation of pyruvate kinase (PK), a key member of the glycolytic pathway, within the skeletal muscle of hibernating ground squirrels. PK was purified from the skeletal muscle of control and torpid Richardson's ground squirrels, and PK kinetics, structural stability, and posttranslational modifications were subsequently assessed. Torpid PK displayed a nearly threefold increase in K PEP as compared to control PK when assayed at 5 °C. ProQ Diamond phosphoprotein staining as well as phospho-specific western blots indicated that torpid PK was significantly more phosphorylated than the euthermic control. PK from the torpid condition was also shown to possess nearly twofold acetyl content as compared to control PK. In conclusion, skeletal muscle PK from the Richardson's ground squirrel may be regulated posttranslationally between the euthermic and torpid states, and this may inhibit PK functioning during torpor in accordance with the decrease in glycolytic rate during dormancy.
在冬季冬眠期间,地松鼠的蛰伏状态表现出许多生理和生化变化,包括燃料代谢的改变。在蛰伏期间,许多组织从碳水化合物代谢转向脂质分解代谢,通常通过调节糖酵解和脂解途径中的关键酶来实现。本研究调查了糖酵解途径关键成员丙酮酸激酶 (PK) 在冬眠地松鼠骨骼肌中的潜在调节作用。从对照和蛰伏的理氏地松鼠的骨骼肌中纯化了 PK,并随后评估了 PK 的动力学、结构稳定性和翻译后修饰。在 5°C 下进行测定时,与对照 PK 相比,蛰伏 PK 的 K PEP 增加了近三倍。ProQ Diamond 磷酸蛋白染色以及磷酸特异性 Western blot 表明,蛰伏 PK 的磷酸化程度明显高于体温正常的对照。与对照 PK 相比,蛰伏状态下的 PK 还显示出近两倍的乙酰化含量。总之,理氏地松鼠的骨骼肌 PK 可能在体温正常和蛰伏状态之间进行翻译后调节,这可能会根据休眠期间糖酵解速率的降低来抑制蛰伏期间的 PK 功能。